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首页> 外文期刊>Scientific reports. >Thermal carbonization in nanoscale reactors: controlled formation of carbon nanodots inside porous CaCO 3 microparticles
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Thermal carbonization in nanoscale reactors: controlled formation of carbon nanodots inside porous CaCO 3 microparticles

机译:纳米级反应器中的热碳化:在多孔CaCO 3微粒内部受控形成碳纳米点

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摘要

Synthesis of carbon nanodots (CNDs) in confined geometry via incorporation of dextran sulphate into pores of CaCO3 microparticles is demonstrated. The preparation process included three steps: co-precipitation of solutions of inorganic salts and carbon source, thermal treatment and CaCO3 matrix removal. We show that geometric constraints can be used to precisely control the amount of source material and to avoid formation of large carbon particles. Analysis of TEM data shows particle size of ~3.7?nm with narrow size distribution. Furthermore, we found that variation in pore morphology has a clear effect on CNDs structure and optical properties. CNDs with graphene oxide like structure were obtained in the nanoporous outer shell layer of CaCO3 microparticles, while less ordered CNDs with the evidence of complex disordered carbons were extracted from the inner microcavity. These results suggest that confined volume synthesis route in CaCO3 nanopores can be used to precisely control the structure and optical properties of CNDs.
机译:演示了通过将硫酸葡聚糖掺入CaCO3微粒的孔中,在有限的几何形状下合成碳纳米点(CND)。制备过程包括三个步骤:无机盐和碳源溶液的共沉淀,热处理和CaCO3基质的去除。我们表明,几何约束可用于精确控制源材料的数量并避免形成大的碳颗粒。 TEM数据分析显示,粒径为〜3.7?nm,粒径分布较窄。此外,我们发现孔形态的变化对CND的结构和光学性能有明显的影响。在CaCO3微粒的纳米多孔外壳层中获得了具有氧化石墨烯状结构的CND,而从内部微腔中提取了具有复杂无序碳的证据的有序CND。这些结果表明,CaCO3纳米孔中的有限体积合成路线可用于精确控制CND的结构和光学性质。

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